Oxidative stability of oil-in-water emulsions containing iron chelates: Transfer of iron from chelates to milk proteins at interface
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GUZUN-COJOCARU, Tatiana, KOEV, Chavdar, YORDANOV, Martin, KARBOWIAK, Thomas, CASES, Eliane, CAYOT, Philippe. Oxidative stability of oil-in-water emulsions containing iron chelates: Transfer of iron from chelates to milk proteins at interface. In: Food Chemistry, 2011, vol. 125, pp. 326-333. ISSN 0308-8146. DOI: https://doi.org/10.1016/j.foodchem.2010.08.004
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Food Chemistry
Volumul 125 / 2011 / ISSN 0308-8146

Oxidative stability of oil-in-water emulsions containing iron chelates: Transfer of iron from chelates to milk proteins at interface

DOI:https://doi.org/10.1016/j.foodchem.2010.08.004

Pag. 326-333

Guzun-Cojocaru Tatiana12, Koev Chavdar13, Yordanov Martin13, Karbowiak Thomas1, Cases Eliane1, Cayot Philippe1
 
1 University of Burgundy,
2 Technical University of Moldova,
3 University of Food Technologies
 
 
Disponibil în IBN: 20 iulie 2023


Rezumat

Iron supplementation can promote oxidation of food matrices as well as cell lipids. The oxidative stability of oil/water emulsions stabilised by β-lactoglobulin (BLG) or sodium caseinate (SC) was studied in the presence of Fe-bisglycinate, NaFe-EDTA or FeSO4. Lipid oxidation was evaluated by following the peroxide value (PV) and the thiobarbituric acid reactive substances (TBARS) over 7days. At pH 6.5, for Fe-bisglycinate iron complement, the oxidation kinetics was more reduced with BLG than with SC. Contrarily to BLG, SC possesses phosphate groups that have more affinity for iron ions than carboxylate residues. Both BLG and SC stabilised emulsions were more oxidised with Fe-bisglycinate or FeSO4 than with NaFe-EDTA. At pH 3.5, lipid oxidation was higher compared to pH 6.5. These results indicate that the competition for iron complexation between functional groups of protein and salt counter-ions (glycinate, sulphate or EDTA) appear as a key factor in oxidation. 

Cuvinte-cheie
anaemia, Fe-bisglycinate, Iron fortification, lipid oxidation, NaFe-EDTA